Department of Biochemistry, University of Vermont, Burlington, Vermont 05405, USA.
J Biol Chem. 2010 Jan 29;285(5):3371-82. doi: 10.1074/jbc.M109.055178. Epub 2009 Dec 2.
The effect of glycosylation on tissue factor (TF) activity was evaluated, and site-specific glycosylation of full-length recombinant TF (rTF) and that of natural TF from human placenta (pTF) were studied by liquid chromatography-tandem mass spectrometry. The amidolytic activity of the TF.factor VIIa (FVIIa) complex toward a fluorogenic substrate showed that the catalytic efficiency (V(max)) of the complex increased in the order rTF(1-243) (Escherichia coli) < rTF(1-263) (Sf9 insect cells) < pTF for the glycosylated and deglycosylated forms. Substrate hydrolysis was unaltered by deglycosylation. In FXase, the K(m) of FX for rTF(1-263)-FVIIa remained unchanged after deglycosylation, whereas the k(cat) decreased slightly. A pronounced decrease, 4-fold, in k(cat) was observed for pTF.FVIIa upon deglycosylation, whereas the K(m) was minimally altered. The parameters of FX activation by both rTF(1-263D)-FVIIa and pTF(D)-FVIIa were identical and similar to those for rTF(1-243)-FVIIa. In conclusion, carbohydrates significantly influence the activity of TF proteins. Carbohydrate analysis revealed glycosylation on asparagines 11, 124, and 137 in both rTF(1-263) and pTF. The carbohydrates of rTF(1-263) contain high mannose, hybrid, and fucosylated glycans. Natural pTF contains no high mannose glycans but is modified with hybrid, highly fucosylated, and sialylated sugars.
研究了糖基化对组织因子 (TF) 活性的影响,并通过液相色谱-串联质谱法研究了全长重组 TF (rTF) 和人胎盘来源 TF (pTF) 的特异性糖基化位点。TF-FVIIa 复合物对荧光底物的氨肽酶活性表明,复合物的催化效率 (V(max)) 按以下顺序增加:rTF(1-243)(大肠杆菌)<rTF(1-263)(Sf9 昆虫细胞)<pTF 对于糖基化和去糖基化形式。底物水解不受去糖基化影响。在 FXase 中,rTF(1-263)-FVIIa 对 FX 的 K(m) 在去糖基化后保持不变,而 k(cat)略有下降。pTF.FVIIa 的 k(cat) 明显下降 4 倍,而 K(m) 则略有改变。rTF(1-263D)-FVIIa 和 pTF(D)-FVIIa 激活 FX 的参数完全相同,与 rTF(1-243)-FVIIa 相似。总之,碳水化合物显著影响 TF 蛋白的活性。碳水化合物分析表明,rTF(1-263)和 pTF 中的天冬酰胺 11、124 和 137 均发生了糖基化。rTF(1-263)的碳水化合物含有高甘露糖、杂合和岩藻糖基化聚糖。天然 pTF 不含高甘露糖聚糖,但经过修饰,具有杂合、高度岩藻糖基化和唾液酸化的糖。